PepO is a target of the two-component systems VicRK and CovR required for systemic virulence of Streptococcus mutans

Streptococcus mutans , a cariogenic species, is often associated with cardiovascular infections. Systemic virulence of specific S. mutans serotypes has been associated with the expression of the collagen- and laminin-binding protein Cnm, which is transcriptionally regulated by VicRK and CovR. In thi...

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Main Authors: Lívia A. Alves, Tridib Ganguly, Érika N. Harth-Chú, Jessica Kajfasz, José A. Lemos, Jacqueline Abranches, Renata O. Mattos-Graner
Format: Article
Language:English
Published: Taylor & Francis Group 2020-01-01
Series:Virulence
Subjects:
Online Access:http://dx.doi.org/10.1080/21505594.2020.1767377
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spelling doaj-bb8627b2fce041bba7c539bcd97e30892021-01-15T14:09:06ZengTaylor & Francis GroupVirulence2150-55942150-56082020-01-0111152153610.1080/21505594.2020.17673771767377PepO is a target of the two-component systems VicRK and CovR required for systemic virulence of Streptococcus mutansLívia A. Alves0Tridib Ganguly1Érika N. Harth-Chú2Jessica Kajfasz3José A. Lemos4Jacqueline Abranches5Renata O. Mattos-Graner6Department of Oral Diagnosis, Piracicaba Dental School – State University of Campinas, Piracicaba, SP, BrazilUniversity of Florida College of DentistryDepartment of Oral Diagnosis, Piracicaba Dental School – State University of Campinas, Piracicaba, SP, BrazilUniversity of Florida College of DentistryUniversity of Florida College of DentistryUniversity of Florida College of DentistryDepartment of Oral Diagnosis, Piracicaba Dental School – State University of Campinas, Piracicaba, SP, BrazilStreptococcus mutans , a cariogenic species, is often associated with cardiovascular infections. Systemic virulence of specific S. mutans serotypes has been associated with the expression of the collagen- and laminin-binding protein Cnm, which is transcriptionally regulated by VicRK and CovR. In this study, we characterized a VicRK- and CovR-regulated gene, pepO, coding for a conserved endopeptidase. Transcriptional and protein analyses revealed that pepO is highly expressed in S. mutans strains resistant to complement immunity (blood isolates) compared to oral isolates. Gel mobility assay, transcriptional, and Western blot analyses revealed that pepO is repressed by VicR and induced by CovR. Deletion of pepO in the Cnm+ strain OMZ175 (OMZpepO) or in the Cnm− UA159 (UApepO) led to an increased susceptibility to C3b deposition, and to low binding to complement proteins C1q and C4BP. Additionally, pepO mutants showed diminished ex vivo survival in human blood and impaired capacity to kill G. mellonella larvae. Inactivation of cnm in OMZ175 (OMZcnm) resulted in increased resistance to C3b deposition and unaltered blood survival, although both pepO and cnm mutants displayed attenuated virulence in G. mellonella. Unlike OMZcnm, OMZpepO could invade HCAEC endothelial cells. Supporting these phenotypes, recombinant proteins rPepO and rCnmA showed specific profiles of binding to C1q, C4BP, and to other plasma (plasminogen, fibronectin) and extracellular matrix proteins (type I collagen, laminin). Therefore this study identifies a novel VicRK/CovR-target required for immune evasion and host persistence, pepO, expanding the roles of VicRK and CovR in regulating S. mutans virulence.http://dx.doi.org/10.1080/21505594.2020.1767377streptococcus mutanssystemic infectionstwo component systempeptidasescomplement systemcardiovascular diseases
collection DOAJ
language English
format Article
sources DOAJ
author Lívia A. Alves
Tridib Ganguly
Érika N. Harth-Chú
Jessica Kajfasz
José A. Lemos
Jacqueline Abranches
Renata O. Mattos-Graner
spellingShingle Lívia A. Alves
Tridib Ganguly
Érika N. Harth-Chú
Jessica Kajfasz
José A. Lemos
Jacqueline Abranches
Renata O. Mattos-Graner
PepO is a target of the two-component systems VicRK and CovR required for systemic virulence of Streptococcus mutans
Virulence
streptococcus mutans
systemic infections
two component system
peptidases
complement system
cardiovascular diseases
author_facet Lívia A. Alves
Tridib Ganguly
Érika N. Harth-Chú
Jessica Kajfasz
José A. Lemos
Jacqueline Abranches
Renata O. Mattos-Graner
author_sort Lívia A. Alves
title PepO is a target of the two-component systems VicRK and CovR required for systemic virulence of Streptococcus mutans
title_short PepO is a target of the two-component systems VicRK and CovR required for systemic virulence of Streptococcus mutans
title_full PepO is a target of the two-component systems VicRK and CovR required for systemic virulence of Streptococcus mutans
title_fullStr PepO is a target of the two-component systems VicRK and CovR required for systemic virulence of Streptococcus mutans
title_full_unstemmed PepO is a target of the two-component systems VicRK and CovR required for systemic virulence of Streptococcus mutans
title_sort pepo is a target of the two-component systems vicrk and covr required for systemic virulence of streptococcus mutans
publisher Taylor & Francis Group
series Virulence
issn 2150-5594
2150-5608
publishDate 2020-01-01
description Streptococcus mutans , a cariogenic species, is often associated with cardiovascular infections. Systemic virulence of specific S. mutans serotypes has been associated with the expression of the collagen- and laminin-binding protein Cnm, which is transcriptionally regulated by VicRK and CovR. In this study, we characterized a VicRK- and CovR-regulated gene, pepO, coding for a conserved endopeptidase. Transcriptional and protein analyses revealed that pepO is highly expressed in S. mutans strains resistant to complement immunity (blood isolates) compared to oral isolates. Gel mobility assay, transcriptional, and Western blot analyses revealed that pepO is repressed by VicR and induced by CovR. Deletion of pepO in the Cnm+ strain OMZ175 (OMZpepO) or in the Cnm− UA159 (UApepO) led to an increased susceptibility to C3b deposition, and to low binding to complement proteins C1q and C4BP. Additionally, pepO mutants showed diminished ex vivo survival in human blood and impaired capacity to kill G. mellonella larvae. Inactivation of cnm in OMZ175 (OMZcnm) resulted in increased resistance to C3b deposition and unaltered blood survival, although both pepO and cnm mutants displayed attenuated virulence in G. mellonella. Unlike OMZcnm, OMZpepO could invade HCAEC endothelial cells. Supporting these phenotypes, recombinant proteins rPepO and rCnmA showed specific profiles of binding to C1q, C4BP, and to other plasma (plasminogen, fibronectin) and extracellular matrix proteins (type I collagen, laminin). Therefore this study identifies a novel VicRK/CovR-target required for immune evasion and host persistence, pepO, expanding the roles of VicRK and CovR in regulating S. mutans virulence.
topic streptococcus mutans
systemic infections
two component system
peptidases
complement system
cardiovascular diseases
url http://dx.doi.org/10.1080/21505594.2020.1767377
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